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首页> 外文期刊>Renewable Power Generation, IET >Virtual Park-based control strategy for grid-connected inverter interfaced renewable energy sources
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Virtual Park-based control strategy for grid-connected inverter interfaced renewable energy sources

机译:基于虚拟园区的并网逆变器可再生能源控制策略

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Unbalanced grid faults are the most severe perturbations which degrade the performance of grid-connected inverter interfaced renewable energy sources (IIRESs). In this regard, this study proposes a novel control strategy that provides optimum use of the power capability of the grid-connected IIRES under unbalanced grid fault conditions. One of the major contributions to previous methods is to propose a fast and robust improved Virtual Park (VP) sequence extractor to implement the reference current generator (RCG). The dynamic response of the grid-connected IIRES has also enhanced thanks to the proposed VP sequence extractor. The computing of maximum active power injection and simultaneously amplitude of phase currents is embedded into a new algorithm based the RCG to meet the aimed control objectives. The controllability and minimisation of active and reactive power oscillations are also formulated and carried out with only one control parameter. Another contribution of this study is to prevent overcurrent issues with peak current limitation control. Reference for active power is online computed based on the maximum current injection at inverter capacity for overcurrent protection. The validating effectiveness of the proposed solution is performed by a comprehensive set of cases to show the shortcomings of previous similar studies.
机译:不平衡的电网故障是最严重的干扰,会降低并网逆变器接口的可再生能源(IIRES)的性能。在这方面,本研究提出了一种新颖的控制策略,该策略可在不平衡电网故障条件下最佳利用并网IIRES的功率。对先前方法的主要贡献之一是提出了一种快速而强大的改进型虚拟公园(VP)序列提取器,以实现参考电流发生器(RCG)。由于提出了VP序列提取器,并网的IIRES的动态响应也得到了增强。最大有功功率注入以及相电流幅值的计算被嵌入到基于RCG的新算法中,以满足目标控制目标。还制定了有功功率和无功功率振荡的可控性和最小化,并且仅通过一个控制参数即可执行。这项研究的另一项贡献是通过峰值电流限制控制来防止过电流问题。基于逆变器容量下的最大电流注入,在线计算有功功率参考,以提供过流保护。提出的解决方案的验证有效性是通过一系列综合案例来执行的,以显示以前类似研究的缺点。

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